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Engineering and Technology

D-Index
43
Citations
8311
World Ranking
6086
National Ranking
1696

Overview

Thomas T. C. Hsu is affiliated with the University of Houston in the United States. Their research primarily focuses on the field of Engineering, with a strong emphasis on Civil and Structural Engineering. Their work intersects with areas such as Pollution, Building and Construction, Nuclear Energy and Engineering, and Polymers and Plastics.

The scientist has contributed significantly to topics including:

  • Concrete Corrosion and Durability
  • Smart Materials for Construction
  • Structural Behavior of Reinforced Concrete
  • Structural Load-Bearing Analysis
  • Structural Health Monitoring Techniques
  • Structural Response to Dynamic Loads
  • Advanced Energy Technologies and Civil Engineering Innovations

Their recent published papers cover several aspects of structural engineering and materials science. These include:

  • Development of robust ultra-high-performance carbon nanofiber aggregates (UHPCNFAs) for structural health monitoring, 2023, Engineering Structures
  • Nonlinear finite element model updating and fourier neural operator for digital twin of reinforced concrete containment vessel under seismic excitations, 2024, Engineering Structures
  • Experimental study on skew inverted-T bent caps with minimum traditional and skew transverse reinforcing, 2021, Engineering Structures
  • Finite-Element Simulation and Cost-Benefit Analysis of Full-Scale Skewed Inverted-T Bridge Caps with Traditional and Skew Reinforcements, 2022, Journal of Bridge Engineering
  • Effects of heat, moisture/water, and compressive force on frequency response spectrum of super sensitive carbon nanofiber aggregates (SSCNFA), 2024, Cement and Concrete Composites

Thomas T. C. Hsu frequently collaborates with a number of coauthors, including:

  • Jiaji Wang
  • Y. L. Mo
  • Bhagirath Joshi
  • Xiaonan Shan
  • Satya Sapath Roy

Their research has appeared predominantly in the following venues:

  • Engineering Structures
  • Cement and Concrete Composites
  • Journal of Bridge Engineering
  • Materials & Design
  • arXiv (Cornell University)

Best Publications

  • Constitutive Laws of Concrete in Tension and Reinforcing Bars Stiffened By Concrete

    Abdeldjelil Belarbi;Thomas T. C. Hsu

  • Constitutive Laws of Softened Concrete in Biaxial Tension Compression

    Abdeldjelil Belarbi;Thomas T. C. Hsu

  • Microcracking of Plain Concrete and the Shape of the Stress-Strain Curve

    Thomas T. C. Hsu;Floyd O. Slate;Gerald M. Sturman;George Winter

  • Behavior and Analysis of 100 MPa Concrete Membrane Elements

    Li-Xin “Bob” Zhang;Thomas T. C. Hsu

  • SOFTENED TRUSS MODEL THEORY FOR SHEAR AND TORSION

    Thomas T. C. Hsu

  • Fatigue of Plain Concrete

    Thomas T. C. Hsu

  • Nonlinear finite element analysis of concrete structures using new constitutive models

    Taijun Wang;Thomas T.C Hsu

  • Behavior of Reinforced Concrete MembraneElements in Shear

    Xiao-Bo David Pang;Thomas T. C. Hsu

  • FIXED ANGLE SOFTENED TRUSS MODEL FOR REINFORCED CONCRETE

    Xiao-Bo David Pang;Thomas T. C. Hsu

  • SOFTENED MEMBRANE MODEL FOR REINFORCED CONCRETE ELEMENTS IN SHEAR

    Thomas T. C. Hsu;Ronnie R. H. Zhu

  • Nonlinear analysis of membrane elements by fixed-angle softened-truss model

    Thomas T. C. Hsu;Li-Xin "Bob" Zhang

  • Unified Theory of Concrete Structures: Hsu/Unified Theory of Concrete Structures

    Thomas T. C. Hsu;Y. L. Mo

  • A softened membrane model for torsion in reinforced concrete members

    Chyuan-Hwan Jeng;Thomas T.C. Hsu

  • Torsion of Reinforced Concrete

    Thomas T. C. Hsu

  • Unified Theory of Concrete Structures

    Thomas T. C. Hsu;Yi Lung Mo

  • RATIONAL SHEAR MODULUS FOR SMEARED-CRACK ANALYSIS OF REINFORCED CONCRETE

    Ronnie R. H. Zhu;Thomas T. C. Hsu;Jung-Yoon Lee

  • Torsion of Structural Concrete-Behavior of Reinforced Concrete Rectangular Members

    Thomas T.C. Hsu

  • Softening of Concrete in Torsional Members - Theroy and Tests

    Thomas T. C. Hsu;Y. L. Mo

  • Behavior of reinforced concrete elements under cyclic shear. II: Theoretical model

    Mohamad Mansour;Thomas T. C. Hsu

  • TENSION STIFFENING IN REINFORCED CONCRETE MEMBRANE ELEMENTS

    Thomas T. C. Hsu;Li-Xin Zhang

Frequent Co-Authors

Yi-Lung Mo
Yi-Lung Mo University of Houston
Kirill V. Larin
Kirill V. Larin University of Houston
Abdeldjelil Belarbi
Abdeldjelil Belarbi University of Houston
Bin Xu
Bin Xu Shenzhen University
Chandra Mohan
Chandra Mohan University of Houston

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